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Topology-independent Software-Defined Edge Control for Scalable Ethernet DCN

机译:可缩放以太网DCN的拓扑无关的软件定义边缘控制

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Although Layer-2 networking meets the requirement of datacenter operators, it can not scale in the existing Ethernet Datacenter Network (DCN). In this paper, motivated by the backwards compatibility of Open Flow with current commodity switches, we propose a topology-independent software-defined edge control framework, named FRINGE, which exploits the scalable capability for Ethernet DCN. FRINGE is able to leverage programmable OpenFlow switches deployed at the edge of DCN to intercept broadcast packets and achieve address aggregation through switch-based MAC address resolution. We implement the proposed framework in an SDN prototyping environment and validate it under typical DCN fabrics, where different types of workloads are applied. Evaluation results reveal that FRINGE is able to significantly reduce the total number of rules in all network devices, suppress broadcast packets and exploit redundant paths, which improves the scalability of Ethernet DCNs.
机译:虽然第2层网络满足数据中心运营商的要求,但它不能在现有以太网数据中心网络(DCN)中缩放。在本文中,通过具有当前商品交换机的开放流的向后兼容性,我们提出了一种拓扑独立的软件定义的边缘控制框架,命名为边缘,它利用以太网DCN的可扩展功能。边缘能够利用部署在DCN边缘的可编程OpenFlow交换机拦截广播数据包,并通过基于交换机的MAC地址分辨率实现地址聚合。我们在SDN原型环境中实现了所提出的框架,并在典型的DCN面料下验证,应用不同类型的工作负载。评估结果表明,边缘能够显着减少所有网络设备中的规则总数,抑制广播数据包和利用冗余路径,这提高了以太网DCN的可扩展性。

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